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Betulin attenuates pneumolysin-induced cell injury and DNA damage

机译:桦木衰减肺蛋白诱导的细胞损伤和DNA损伤

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Aims Pneumolysin, a pore-forming toxin, is an important virulence factor ofStreptococcus pneumoniaewith multiple biological activity, such as cell lysis and DNA damage. Thus, targeting this toxin is alternative strategy for the treatment ofS. pneumoniaeinfection. Methods and Results Haemolysin assay was performed to identify the potential PLY inhibitor. The mechanism by which betulin, a natural compound from birch bark, against PLY was determined via MICs determination, western blot analysis and oligomerization analysis. Cytotoxicity and Immunofluorescence assays were further used to evaluate the protection of betulin against PLY-induced cell injury and DNA damage. Here, betulin, a natural compound from birch bark, was indentified as an effective inhibitor of PLY. Importantly, at the concentrations required for such inhibition, betulin has no influence onS. pneumoniaeviability or PLY production. The interaction of betulin with PLY restrict the olgomerizaiton of this toxin and, thus, directly neutralizing the activity of PLY. Additionally, betulin treatment alleviate PLY induced cells injury and DNA damage in the co-culture system of PLY and A549 cells. Conclusions Betulin could be used as a promising leading compound againstS. pneumoniaevirulence by directly targeting PLY without antibacterial activity. Significance and Impact of the Study The results presented in this work provided a novel strategy and candidate forS. pneumoniaeinfection.
机译:目的溶血素是一种致孔毒素,是肺炎链球菌的重要毒力因子,具有细胞裂解和DNA损伤等多种生物活性。因此,针对这种毒素是治疗ofS的替代策略。肺炎感染。方法和结果通过溶血素分析确定潜在的PLY抑制剂。通过MIC测定、western blot分析和寡聚分析,确定桦树皮天然化合物白桦醇对抗帘布层的机理。细胞毒性和免疫荧光检测进一步用于评估白桦醇对PLY诱导的细胞损伤和DNA损伤的保护作用。在这里,桦树皮的天然化合物白桦林被鉴定为一种有效的PLY抑制剂。重要的是,在这种抑制所需的浓度下,白桦醇对细胞没有影响。可呼吸性或帘布生产。白桦醇与PLY的相互作用限制了这种毒素的嗅觉,从而直接中和了PLY的活性。此外,在PLY和A549细胞共培养系统中,白桦醇处理可减轻PLY诱导的细胞损伤和DNA损伤。结论白桦醇可作为抗肿瘤的先导化合物。肺炎通过直接靶向PLY而无抗菌活性。这项研究的意义和影响本研究的结果提供了一种新的策略和候选方法。肺炎感染。

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